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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Micro-machinability of nanoparticle-reinforced Mg-based MMCs: an experimental investigation
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Micro-machinability of nanoparticle-reinforced Mg-based MMCs: an experimental investigation

机译:基于纳米粒子增强的MG的MMCS的微观加工性:实验研究

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摘要

As a composite material with combination of low weight and high engineering strength, metal matrix composites (MMCs) have been utilised in numerous applications such as aerospace, automobile, and bioengineering. However, MMCs are recognised as difficult-to-cut materials due to their improved strength and high hardness of the reinforcing particles. This paper presents an experimental investigation on micro-machinability of Mg-based MMCs reinforced with Ti and TiB2 nano-sized particles. The tool wear of AlTiN-coated micro-end mills was investigated. Both abrasive and chip adhesion effect were observed on the main cutting edges, whilst the reinforcement materials and volume fraction play an important role in determining the wear type and severity. The influence of cutting parameters on the surface morphology and cutting force was studied. According to analysis of variance (ANOVA), depth of cut and spindle speed have significant effect on the surface roughness. The specific cutting energy, surface morphology and the minimum chip thickness was obtained and characterised with the aim of examining the size effect. Furthermore, higher cutting force and worse machined surface quality were obtained at the small feed per tooth ranging from 0.15 to 0.5 mu m/tooth indicating a strong size effect. Overall, Mg/TiB2 MMCs exhibit better machinability.
机译:作为具有低重量和高工程强度的组合的复合材料,金属基质复合材料(MMC)已被用于许多应用,例如航空航天,汽车和生物工程。然而,由于其改善的强度和加强颗粒的高硬度,MMCs被认为是难以切割的材料。本文介绍了用Ti和Tib2纳米尺寸颗粒加固的Mg基MMC微观加工性的实验研究。研究了Altin涂层微终端铣刀的工具磨损。在主切削刃上观察到磨料和芯片粘附效果,同时加强材料和体积分数在确定磨损类型和严重程度方面发挥着重要作用。研究了切割参数对表面形态和切割力的影响。根据方差分析(ANOVA),切割深度和主轴速度对表面粗糙度具有显着影响。获得特定的切割能量,表面形貌和最小芯片厚度,并以检查尺寸效应的目的为特征。此外,在每个齿的小饲料中获得更高的切削力和更差的加工表面质量,范围为0.15至0.5μm/齿,表示强大效果。总体而言,MG / TIB2 MMC表现出更好的可加工性。

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